Login / Signup

PRDM14 extinction enables the initiation of trophoblast stem cell formation.

Chunfang XuWeijie ZhaoLijin PengTingxuan YinJiani GuoYue LiLu LiuJinying YangCongjian XuMei-Rong Du
Published in: Cellular and molecular life sciences : CMLS (2024)
Trophoblast stem cells (TSCs) can be chemically converted from embryonic stem cells (ESCs) in vitro. Although several transcription factors (TFs) have been recognized as essential for TSC formation, it remains unclear how differentiation cues link elimination of stemness with the establishment of TSC identity. Here, we show that PRDM14, a critical pluripotent circuitry component, is reduced during the formation of TSCs. The reduction is further shown to be due to the activation of Wnt/β-catenin signaling. The extinction of PRDM14 results in the erasure of H3K27me3 marks and chromatin opening in the gene loci of TSC TFs, including GATA3 and TFAP2C, which enables their expression and thus the initiation of the TSC formation process. Accordingly, PRDM14 reduction is proposed here as a critical event that couples elimination of stemness with the initiation of TSC formation. The present study provides novel insights into how induction signals initiate TSC formation.
Keyphrases
  • stem cells
  • transcription factor
  • genome wide
  • embryonic stem cells
  • poor prognosis
  • gene expression
  • cell proliferation
  • dna damage
  • dna methylation
  • binding protein
  • copy number
  • signaling pathway